Hostname: page-component-cd9895bd7-mkpzs Total loading time: 0 Render date: 2024-12-19T03:08:23.819Z Has data issue: false hasContentIssue false

Vortex shedding and lock-on of a circular cylinder in oscillatory flow

Published online by Cambridge University Press:  21 April 2006

C. Barbi
Affiliation:
Institut de Mécanique des Fluides, UM34-C.N.R.S., Marseille, France
D. P. Favier
Affiliation:
Institut de Mécanique des Fluides, UM34-C.N.R.S., Marseille, France
C. A. Maresca
Affiliation:
Institut de Mécanique des Fluides, UM34-C.N.R.S., Marseille, France
D. P. Telionis
Affiliation:
Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA

Abstract

An experimental study has been made of a circular cylinder in steady and oscillatory flow with non-zero mean velocity up to a Reynolds number of 40000. The results for the stationary cylinder are in close agreement with previously published data. Skin-friction measurements revealed the amplitude of fluctuation of the boundary layer for different angular locations. It has been universally accepted that bluff bodies shed vortices at their natural frequency of shedding (Strouhal frequency), or, when synchronized with an external unsteadiness, at the frequency of the disturbance or half of it, depending of the direction of the unsteadiness. Our findings, instead, indicate that the shedding frequency may vary smoothly with the driving frequency before locking on its subharmonic. Moreover, the present results indicate that, at the lowest frequency limit of lock-on, vortices are shed simultaneously on both sides of the model. A more traditional alternate pattern of vortex shedding is then recovered at higher driving frequencies.

Type
Research Article
Copyright
© 1986 Cambridge University Press

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Achenbach E.1968 J. Fluid Mech. 34, 625.
Barbi C., Favier, D. & Maresca C.1981 In Proc. IUTAM Symp. Turbulent Shear Flow. p. 248. Springer.
Batham J. P.1973 J. Fluid Mech. 57, 209.
Bishop, R. E. & Hassan A. Y.1964 Proc. R. Soc. Lond. A 227, 51.
Chen Y. N.1968 J. Engng. Ind. 90, 134.
Dwyer, H. A. & McCroskey W. J.1973 J. Fluid Mech. 61, 753.
Ericsson L. E.1980 AIAA J. 18, 935.
Ferguson, N. & Parkinson G. V.1967 J. Engng Ind. 89, 831.
Gonzalez M.1980 Thèse de Doctorat Ingénieur, Lyon, France (in French). Contribution à l’étude de l'aerodynamisme d'un prisme à section carrée placé en écoulement confiné.
Griffin, O. M. & Ramberg S. E.1976 J. Fluid Mech. 75, 257.
Hatfield, H. M. & Morkovin M. V.1973 Trans. ASME I: J. Fluid Engng 95, 249.
Jones G. S.1980 M.Sc. thesis, Virginia Polytechnic Institute and State University, Va. USA. Measurement and visualization of vortex shedding natural and forced.
Jones G. S., Barbi, C. & Telionis D. P. 1981a In Proc. IUTAM Symp. Turbulent Shear Flow, p. 228. Springer.
Jones G. S., Telionis, D. P. & Barbi C.1981b AIAA paper 81–0053.
King R.1977 Ocean Engng 4, 141.
Koromilas, C. A. & Telionis D. P.1980 J. Fluid Mech. 97, 347.
Mcgregor D. M.1957 University of Toronto Institute for Aerospace Studies, Tech. Note 14.
Maresca C., Favier, D. & Rebont J.1978 In 15e Colloque d'aérodynamique appliquée, Marseille, France (in French).
Maresca C., Rebont, J. & Valensi J.1975 In Symp. on Unsteady Aerodynamics (ed. R. B. Kinney), vol. 1, p. 35.
Mei, V. C. & Currie I. G.1969 Phys. Fluids, 12, 2248.
Meier H. U., Kreplin, H. P. & Fang L. W.1981 In Proc. IUTAM Symp. Turbulent Shear Flow, p. 87. Springer.
Ramamurthy, A. S. & Ng C. P.1973 Proc. Inst. Civil Engrs 49, 269.
Sagner M.1981 In 18e Colloque d'aérodynamique appliquée, Poitiers, France (in French).
Sainsbury, R. N. & King D.1971 Proc. Inst. Civ. Engrs 49, 269.
So, R. M. C. & Savkar S. D.1981 J. Fluid Mech. 105, 397.
Stansby P. K.1976 J. Fluid Mech. 74, 641.
Tanida Y., Okajima, A. & Watanabe Y.1973 J. Fluid Mech. 61, 769.
Tatsuno M.1972 Bull. Res. Inst. Appl. Mech., Kyushu University, 36, 25.
Valensi, J. & Rebont J.1972 In Proc. AGARD FDP Meeting Aerodynamics of Rotary Wings, Marseille, France, CPP III, 12 (in French).